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LP8733 Datasheet(PDF) 39 Page - Texas Instruments |
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LP8733 Datasheet(HTML) 39 Page - Texas Instruments |
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39 / 82 page ![]() S SDA START Condition SCL P STOP Condition data change allowed data valid data change allowed data valid data change allowed SCL SDA 39 LP8733 www.ti.com SNVSBK2 – SEPTEMBER 2019 Product Folder Links: LP8733 Submit Documentation Feedback Copyright © 2019, Texas Instruments Incorporated 7.5 Programming 7.5.1 I2C-Compatible Interface The I2C-compatible synchronous serial interface provides access to the programmable functions and registers on the device. This protocol uses a two-wire interface for bidirectional communications between the ICs connected to the bus. The two interface lines are the serial data line (SDA), and the serial clock line (SCL). Every device on the bus is assigned a unique address, and acts as either a master or a slave depending on whether it generates or receives the serial clock SCL. The SCL and SDA lines must each have a pullup resistor placed on the line and remain HIGH even when the bus is idle. The LP8733xx supports standard mode (100 kHz), fast mode (400 kHz), fast mode plus (1 MHz), and high-speed mode (3.4 MHz). 7.5.1.1 Data Validity The data on the SDA line must be stable during the HIGH period of the clock signal (SCL). In other words, the state of the data line can only be changed when clock signal is LOW. Figure 23. Data Validity Diagram 7.5.1.2 Start and Stop Conditions The LP8733xx is controlled via an I2C-compatible interface. START and STOP conditions classify the beginning and end of the I2C session. A START condition is defined as SDA transitions from HIGH to LOW while SCL is HIGH. A STOP condition is defined as an SDA transition from LOW to HIGH while SCL is HIGH. The I2C master always generates the START and STOP conditions. Figure 24. Start and Stop Sequences The I2C bus is considered busy after a START condition and free after a STOP condition. During data transmission, the I2C master can generate repeated START conditions. A START and a repeated START condition are equivalent function-wise. The data on SDA must be stable during the HIGH period of the clock signal (SCL). In other words, the state of SDA can only be changed when SCL is LOW. Figure 25 shows the SDA and SCL signal timing for the I2C-compatible bus. See Figure 1 for timing values. |
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